# Platform Describes the sensors supported on Qualcomm Dragonwing™ RB3 Gen 2 Development Kit. The Qualcomm Dragonwing™ RB3 Gen 2 Development Kit includes an application processor and the Hexagon DSP, which is also called as the low-power processor. The QSH client API resides on the application processor that runs with Linux OS. The QSH resides on the low-power processor that runs with Qualcomm Real Time (QuRT™) OS designed for the Hexagon DSP. Note See [Hardware SoCs](https://docs.qualcomm.com/bundle/publicresource/topics/80-70020-115/soc.html) that are supported on Qualcomm Linux. ## Dragonwing RB3 Gen 2 Development Kit The Dragonwing RB3 Gen 2 Development Kit includes the following hardware, sensor parts, and connectivity configurations. **Hardware specification for low-power processor** - CPU clock up to 1.4 GHz Turbo - Low-power island - 2 MB local memory - 1 MB reserved for QSH and relevant CoreBSP dependencies - 1 MB reserved for audio and relevant CoreBSP dependencies - Five dedicated buses for sensors: one I^3^C, one SPI, one I^2^C, and two UARTs - Twelve dedicated GPIOs with local memory for sensors For more information about the low-power processor, see [Qualcomm Dragonwing RB3 Gen 2 Development Kit](https://docs.qualcomm.com/bundle/publicresource/topics/80-70020-251) documentation. ## Sensors on the platform The following table lists the Core Kit and Vision Kit sensors supported on the Dragonwing RB3 Gen 2 Development Kit: Table : Core Kit sensor | **Placement** | **Sensor part** | **Sensor type** | | --- | --- | --- | | Main board | ICM42688 | Accelerometer and gyroscope | | **Placement** | **Sensor part** | **Sensor type** | | --- | --- | --- | | Main board | ICM42688 | Accelerometer and gyroscope | |
Vision mezzanine | ICM42688 | Accelerometer and gyroscope | |
Vision mezzanine | ICP-10111 | Pressure/barometer | |
Vision mezzanine | AK09915 | Magnetometer | |
Vision mezzanine | | | | | | | | | | | Note On the Vision Kit, only one accelerometer and gyroscope sensor part can be enabled at a time. **Sensors and serial bus configuration** The following table lists the GPIO numbers, serial bus, QSH registry configuration, and interrupts for different sensors on the Dragonwing RB3 Gen 2 Development Kit: | GPIOs |
Interface |
Interface | Sensors connected | QSH registry parameters |
Interrupts |
Interrupts | | | | --- | --- | --- | --- | --- | --- | --- | --- | --- | | GPIO\_159 |
I^2^C |
Magnetometer (AK09915)


Pressure (ICP-10111) |
`bus_type: 0 (SNS_BUS_I2C)`


`bus_instance: 1`


`max_bus_speed_khz: 400`


`slave_config:`: I^2^C slave address |
Polling


Note


Pressure and magnetometer sensors are configured in the Polling mode in the Dragonwing RB3 Gen 2 Development Kit. |
Polling


Note


Pressure and magnetometer sensors are configured in the Polling mode in the Dragonwing RB3 Gen 2 Development Kit. |
Polling


Note


Pressure and magnetometer sensors are configured in the Polling mode in the Dragonwing RB3 Gen 2 Development Kit. | | | | GPIO\_160 |
I^2^C |
Magnetometer (AK09915)


Pressure (ICP-10111) |
`bus_type: 0 (SNS_BUS_I2C)`


`bus_instance: 1`


`max_bus_speed_khz: 400`


`slave_config:`: I^2^C slave address |
Polling


Note


Pressure and magnetometer sensors are configured in the Polling mode in the Dragonwing RB3 Gen 2 Development Kit. |
Polling


Note


Pressure and magnetometer sensors are configured in the Polling mode in the Dragonwing RB3 Gen 2 Development Kit. |
Polling


Note


Pressure and magnetometer sensors are configured in the Polling mode in the Dragonwing RB3 Gen 2 Development Kit. | | | | GPIO\_161 |
I^3^C |
Not connected |
`bus_type: 3 (SNS_BUS_I3C_SDR)`


`bus_instance: 2`


`max_bus_speed_khz: 12500`


`slave_config:`: I^2^C static address


`i3c_address`: User-defined I^3^C dynamic address |
N.A. |
N.A. |
N.A. | | | | GPIO\_162 |
I^3^C |
Not connected |
`bus_type: 3 (SNS_BUS_I3C_SDR)`


`bus_instance: 2`


`max_bus_speed_khz: 12500`


`slave_config:`: I^2^C static address


`i3c_address`: User-defined I^3^C dynamic address |
N.A. |
N.A. |
N.A. | | | | GPIO\_163 |
SPI |
Accelerometer and gyroscope (ICM42688) |
`bus_type: 1 (SNS_BUS_SPI)`


`bus_instance: 3`


`max_bus_speed_khz: 9600`


`slave_config: 0`: For SPI, this value indicates the chip-select line for the slave. |
GPIO\_103 |
GPIO\_103 |
GPIO\_103 | | | | GPIO\_164 |
SPI |
Accelerometer and gyroscope (ICM42688) |
`bus_type: 1 (SNS_BUS_SPI)`


`bus_instance: 3`


`max_bus_speed_khz: 9600`


`slave_config: 0`: For SPI, this value indicates the chip-select line for the slave. |
GPIO\_103 |
GPIO\_103 |
GPIO\_103 | | | | GPIO\_165 |
SPI |
Accelerometer and gyroscope (ICM42688) |
`bus_type: 1 (SNS_BUS_SPI)`


`bus_instance: 3`


`max_bus_speed_khz: 9600`


`slave_config: 0`: For SPI, this value indicates the chip-select line for the slave. |
GPIO\_103 |
GPIO\_103 |
GPIO\_103 | | | | GPIO\_166 |
SPI |
Accelerometer and gyroscope (ICM42688) |
`bus_type: 1 (SNS_BUS_SPI)`


`bus_instance: 3`


`max_bus_speed_khz: 9600`


`slave_config: 0`: For SPI, this value indicates the chip-select line for the slave. |
GPIO\_103 |
GPIO\_103 |
GPIO\_103 | | | | GPIO\_171 |
UART |
BTLE |
`bus_type: 2 (SNS_BUS_UART)`


`bus_instance: 36` |
N.A. |
N.A. |
N.A. | | | | GPIO\_172 |
UART |
BTLE |
`bus_type: 2 (SNS_BUS_UART)`


`bus_instance: 36` |
N.A. |
N.A. |
N.A. | | | | GPIO\_173 |
UART |
Debug |
`bus_type: 2 (SNS_BUS_UART)`


`bus_instance: 7` |
N.A. |
N.A. |
N.A. | | | | GPIO\_174 |
UART |
Debug |
`bus_type: 2 (SNS_BUS_UART)`


`bus_instance: 7` |
N.A. |
N.A. |
N.A. | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | ## Enable sensors on the Dragonwing RB3 Gen 2 Development Kit Use the following resources to set up and validate the sensors based on either the Core Kit or the Vision Kit. For more info about the Core and Vision Kits, see [Qualcomm Dragonwing RB3 Gen 2 Development Kit](https://docs.qualcomm.com/bundle/publicresource/topics/80-70020-251) documentation. ### Enable sensor on the Core Kit **Hardware set up**: The following resources cover the hardware set up to enable the sensor on the main board. Table : Main board DIP switch (DIP_SW_0) setting | DIP switch number | State | Purpose | | --- | --- | --- | | 5 | OFF | Enable the sensor on the main board. | **Figure: DIP switch setting to enable accelerometer and gyroscope sensor on main board** **Software setup**: No software change is required to enable the accelerometer and gyroscope sensor on the Core Kit. ### Enable sensor on the Vision Kit **Hardware set up**: The following resources cover the hardware setup to enable sensors on the vision mezzanine board. Table : Main board DIP switch (DIP_SW_0) setting | DIP switch number | State | Purpose | | --- | --- | --- | | 5 | ON | Disable the sensor on the main board. | **Figure: DIP switch setting to disable accelerometer and gyroscope sensor on main board** Table : Vision mezzanine DIP switch (DIP1) setting | DIP switch number | State | Purpose | | --- | --- | --- | | 1 | ON | Enable the accelerometer and gyroscope sensor. | | 4 | ON | Enable the pressure sensor. | | 5 | ON | Enable the magnetometer sensor. | Table : Vision mezzanine DIP switch (DIP2) setting | DIP switch number | State | Purpose | | --- | --- | --- | | 5 | ON | Enable the accelerometer and gyroscope sensor. | **Figure: DIP switch setting to enable all sensors on vision mezzanine board** **Software setup**: No software change is required to enable the sensors on the Vision Kit. **Use an accelerometer and gyroscope on the Vision Kit main board(optional)** If you are using the accelerometer and gyroscope sensor on the main board instead of the accelerometer and gyroscope sensor on the vision mezzanine board, then do the following: **Hardware setup**: Set up the hardware DIP switches as mentioned in the following table to enable the accelerometer and gyroscope sensor on the main board and disable the accelerometer and gyroscope sensor on the vision mezzanine board. Table : Main board DIP switch (DIP_SW_0) setting | DIP switch number | State | Purpose | | --- | --- | --- | | 5 | OFF | Enable the sensor on the main board. | Table : Vision mezzanine DIP switch (DIP1) setting | DIP switch number | State | Purpose | | --- | --- | --- | | 1 | OFF | Disable the accelerometer and gyroscope sensor. | Table : Vision mezzanine DIP switch (DIP2) setting | DIP switch number | State | Purpose | | --- | --- | --- | | 5 | OFF | Disable the accelerometer and gyroscope sensor. | **Software setup** Note The `` referred to in the following sections should be considered as one of the existing paths on the device: `/etc/sensors/registry/registry/` or `/var/cache/sensors/registry/registry/`. 1. Edit the `json.lst` file to remove the `qcm6490_rbx_navmez_icm4x6xx_0.json` entry (if present). vi /etc/sensors/config/json.lst Copy to clipboard 2. Open the `qcm6490_rbx_icm4x6xx_0.json` file. vi /etc/sensors/config/qcm6490_rbx_icm4x6xx_0.json Copy to clipboard Add the value `2` to the existing `platform_subtype_id` field as shown here, and save the `qcm6490_rbx_icm4x6xx_0.json` file. "platform_subtype_id": ["5", "2"] Copy to clipboard 3. Remove the existing parsed registry files. rm -f /* Copy to clipboard 4. Reboot the device. reboot Copy to clipboard 5. Check for the registry files that are parsed. ls Copy to clipboard - The following output is displayed for the main board: qcm6490\_rbx\_icm4x6xx\_0.json.icm4x6xx\_0\_platform.accel qcm6490\_rbx\_icm4x6xx\_0.json.icm4x6xx\_0\_platform.accel.fac\_cal.bias qcm6490\_rbx\_icm4x6xx\_0.json.icm4x6xx\_0\_platform.gyro qcm6490\_rbx\_icm4x6xx\_0.json.icm4x6xx\_0\_platform.orient - The following output is displayed for the vision mezzanine board: qcm6490\_rbx\_navmez\_icm4x6xx\_0.json.icm4x6xx\_0\_platform.accel qcm6490\_rbx\_navmez\_icm4x6xx\_0.json.icm4x6xx\_0\_platform.accel.fac\_cal.bias qcm6490\_rbx\_navmez\_icm4x6xx\_0.json.icm4x6xx\_0\_platform.gyro qcm6490\_rbx\_navmez\_icm4x6xx\_0.json.icm4x6xx\_0\_platform.orient Note If the accelerometer and gyroscope sensors are enabled on the main board, then these sensors must be enabled on the vision mezzanine board. After enabling the sensors, revert or undo all the earlier hardware and software setup steps. After the reboot, on the next bootup verify that multiple files with the `qcm6490_rbx_navmez_icm4x6xx_0` prefix are present under the `` path. ## Test sensors on the Dragonwing RB3 Gen 2 Development Kit Use the sensor test application to validate the accelerometer, gyroscope, magnetometer, and pressure sensor streaming. By default, the `ssc_drva_test` tool is built under the `/usr/bin/` directory on the device. - **Test the accelerometer and gyroscope sensor on the Core and Vision Kits** The following is an example command for the accelerometer sensor: ssc_drva_test -sensor=accel -duration=5 -sample_rate=500 Copy to clipboard The following snippet shows an example command that allows the accelerometer sensor for 5 sec at 500 Hz sample rate in the Streaming mode. root@qcm6490:~# ssc_drva_test -sensor=accel -duration=5 -sample_rate=500 6 ssc_drva_test version 1.27k 6 ssc_drva_test -sensor=accel -duration=5 -sample_rate=500 diag: Diag_LSM_Init: invoked for pid: 1141 with init_count: 0 diag:successfully connected to socket 3 diag: Diag_LSM_Init: done for pid: 1141 with init_count: 1 6 event_cb attribute event for da_test 6 event_cb attribute event for da_test 6 using da_test name=da_test, suid = [high addeaddeaddeadde, low addeaddeaddeadde 6 enter send_memory_log_req cookie: 6 6 exit send_memory_log_req 6 enter da_test runner. -rumifact=1 6 -time_to_first_event=233206 6 -time_to_last_event=-20008 6 -sample_ts=50267544823 6 -total_samples=2528 6 -avg_delta=37875 6 -recvd_phy_config_sample_rate=500 6 -random_seed_used=2926886043 6 -num_request_sent=2 6 -first_sample_timestamp=50171775915 6 received event: PASS 6 enter send_memory_log_req cookie: 6 6 exit send_memory_log_req 6 PASS Copy to clipboard The following is the output of the test example: > > > - The `accel` sensor is enabled at 500 Hz. The sensor hardware > runs only at certain sample rates described in the sensor hardware > data sheet. For example, if the command is modified to request > `accel` data at 480 Hz, the `accel` sensor still operates at > 500 Hz. > - A total of 2528 acceleration samples are received during the test. > > > > The following is an example command for the gyroscope sensor: > > > ssc_drva_test -sensor=gyro -duration=5 -sample_rate=500 > Copy to clipboard - **Test the magnetometer and pressure sensor on the Vision Kit** The following is an example command for the magnetometer sensor: ssc_drva_test -sensor=mag -duration=5 -sample_rate=100 Copy to clipboard The following is an example command for the pressure sensor: ssc_drva_test -sensor=pressure -duration=5 -sample_rate=25 Copy to clipboard > > > For troubleshooting common issues, see [Troubleshoot sensors](https://docs.qualcomm.com/doc/80-70020-7/topic/test_troubleshoot.html#debug). Last Published: Jun 26, 2025 [Previous Topic Software](https://docs.qualcomm.com/bundle/publicresource/80-70020-7/topics/software.md) [Next Topic Bring up sensors](https://docs.qualcomm.com/bundle/publicresource/80-70020-7/topics/bringup_sensors.md) Source: [https://docs.qualcomm.com/doc/80-70020-7/topic/platform.html](https://docs.qualcomm.com/doc/80-70020-7/topic/platform.html)